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  <title><![CDATA[Ph.D. Dissertation Defense - Shang Jen Su]]></title>
  <body><![CDATA[<p><strong>Title</strong><em>:&nbsp; Quantum Ring States, Covert Communication over Bosonic Channels, and Quantum Secure Direct Communication</em></p><p><strong>Committee:</strong></p><p>Dr.&nbsp;Matthieu Bloch, ECE, Chair, Advisor</p><p>Dr.&nbsp;John Barry, ECE</p><p>Dr.&nbsp;Viveck Cadambe, ECE</p><p>Dr.&nbsp;Yanbao Zhang, ORNL</p><p>Dr.&nbsp;Robert Clark, Physics</p>]]></body>
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      <value><![CDATA[Quantum Ring States, Covert Communication over Bosonic Channels, and Quantum Secure Direct Communication ]]></value>
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      <value><![CDATA[<p>Quantum communication exploits superposition and entanglement to enable secure and efficient information transfer. This dissertation investigates two aspects of quantum communication. First, we introduce quantum ring states, a class of non-Gaussian mixed states generated through phase modulation and transmission over lossy thermal bosonic channels. These states admit tractable achievable-rate expressions that approach the quantum capacity in the low-power regime and improve covert communication performance. Second, we develop the theoretical foundations of Quantum-Memory-Free (QMF) Quantum Secure Direct Communication (QSDC), an alternative to QKD-based secure communication. We establish privacy amplification theorems for coded sequences and characterize information leakage arising from non-ideal keys and retransmissions, enabling practical and resource-efficient QMF-QSDC protocols.</p>]]></value>
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      <value><![CDATA[2026-08-25T14:00:00-04:00]]></value>
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      <value><![CDATA[Room 423, TSRB]]></value>
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        <url>https://teams.microsoft.com/meet/221101062853515?p=OguZyzuMBLCdu23pb7</url>
        <link_title><![CDATA[Microsoft Teams Link ]]></link_title>
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